首页> 外文期刊>Arabian journal of geosciences >Response of soil microbial biomass and enzymatic activity to biochar amendment in the organic carbon deficient arid soil: a 2-year field study
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Response of soil microbial biomass and enzymatic activity to biochar amendment in the organic carbon deficient arid soil: a 2-year field study

机译:土壤微生物生物量与酶活性对有机碳缺陷土壤中生物炭修正的响应:2年的田间研究

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The application of pyrolyzed organic carbon (C) to soils has been assessed worldwide to play a vital role in improving the physical-chemical characteristics of the soil. However, the effects of co-use of biochar and nitrogen (N) fertilizer on soil biological process in an arid region are not well understood. For this, a 2-year field experiment was conducted in an arid region to assess the co-use of biochar and nitrogen (N) fertilizer on soil microbial biomass and enzyme activity in the rhizosphere of the wheat crop. Sugarcane bagasse was used as biochar feedstock and applied with three levels of biochar (0, 0.5, and 1% C ha(-1)) on carbon equivalent basis in the presence and absence of N fertilization (46kgNha(-1)). Biochar was incorporated in the soil before sowing of wheat, and the soil samples were taken from each treatment at crop maturity. Findings of the study indicated that biochar amendments enhance the soil organic carbon, DOC, inorganic N, and soil moisture contents, while reducing the bulk density and salinity of soil in both wheat growing season. Microbial biomass carbon and nitrogen increased by 18% and 63% with biochar amended at 1% C ha(-1) with nitrogenous fertilizer and the same trend was observed in the following year. Urease anddehydrogenase activities also significantly increased with biochar applied at 1% C ha(-1) with N fertilization illustrating 15% and 19%, respectively. During the second year of wheat trial, the enzymatic activity also boosted up as the first year. The results revealed that sugarcane bagasse-derived biochar addition can be utilized in improving the soil health, nutrient status, and soil biological functions in the calcareous soil of the arid region.
机译:在全球范围内评估了热解的有机碳(c)对土壤的应用,在改善土壤的物理化学特征方面发挥着至关重要的作用。然而,共同使用生物炭和氮气(N)肥对干旱地区土壤生物过程的影响尚不清楚。为此,在干旱地区进行了2年的田间实验,以评估生物炭和氮气(N)肥对土壤微生物生物量和小麦作物根际的酶活性的共用。在存在和不存在N施肥的情况下,甘蔗面包片被用作生物炭原料并用三个水平的生物炭(0,0.5和1%C ha(-1))施用(46kgnha(-1))。在播种小麦之前,生物炭纳入土壤中,土壤样品在作物成熟时从每次治疗中取出。研究结果表明,生物炭修正,增强了土壤有机碳,DOC,无机N和土壤含水量,同时降低了两种小麦生长季节的土壤的散装密度和盐度。微生物生物量碳和氮气在1%C HA(-1)上的Biochar含有18%和63%,在含氮肥料中,在次年期间观察到相同的趋势。脲酶胆汁糖酶活性也显着增加了在1%C ha(-1)下施用的生物施,N施肥分别为15%和19%。在小麦审判的第二年,酶活性也提升了第一年。结果表明,甘蔗甘蔗渣衍生的生物炭加入可用于改善干旱地区钙质土壤中的土壤健康,营养状况和土壤生物学功能。

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